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来自克里特岛的三种海芋属植物的产热作用。

Thermogenesis of three species of Arum from Crete.

作者信息

Seymour Roger S, Gibernau Marc, Pirintsos Stergios Arg

机构信息

Ecology and Evolutionary Biology, University of Adelaide, Adelaide, SA, Australia.

出版信息

Plant Cell Environ. 2009 Oct;32(10):1467-76. doi: 10.1111/j.1365-3040.2009.02015.x. Epub 2009 Jun 22.

Abstract

Inflorescences of arum lilies have a three-part spadix with a scent-producing, sterile appendix above two bands of fertile male and female florets. The appendix and male florets are thermogenic, but with different temporal patterns. Heat-production was measured in Arum concinnatum, A. creticum and A. idaeum. The male florets of A. concinnatum showed a 3 d continuous episode of thermogenesis with three waves, and the appendix warmed in a single, 6 h episode. Maximum fresh-mass-specific CO(2) production rate was 0.17 micromol s(-1) g(-1) to achieve a 10.9 degrees C temperature elevation by the appendix, and 0.92 micromol s(-1) g(-1) to achieve a 4.8 degrees C elevation by male florets. Reversible, physiological temperature regulation was not evident in either tissue. Respiration increased with tissue temperatures with Q(10) values of 1.8-3.9, rather than less than 1.0 as occurs in thermoregulatory flowers. Experimental step changes in temperature of appendix and male floret tissues also failed to show thermoregulatory responses. The patterns of thermogenesis therefore appear to be fixed by the temporal sequence of blooming. Thermogenesis in the alpine species, A. creticum and A. idaeum, was significantly lower than in the lowland A. concinnatum, possibly related to difficulty in raising floral temperature in their cold and windy habitat.

摘要

海芋百合的花序有一个三部分组成的肉穗花序,在两排可育的雄花和雌花之上有一个能产生气味的不育附属器。附属器和雄花是产热的,但具有不同的时间模式。对雅致海芋、克里特海芋和伊达山海芋的产热情况进行了测量。雅致海芋的雄花表现出持续3天的产热过程,有三个波峰,附属器在一个6小时的时间段内升温。附属器的最大鲜质量比二氧化碳产生速率为0.17微摩尔·秒⁻¹·克⁻¹,可使温度升高10.9℃,雄花的最大鲜质量比二氧化碳产生速率为0.92微摩尔·秒⁻¹·克⁻¹,可使温度升高4.8℃。在这两种组织中均未明显观察到可逆的生理温度调节。呼吸作用随组织温度升高而增加,Q₁₀值为1.8 - 3.9,而不是像温度调节型花朵那样小于1.0。对附属器和雄花组织进行温度的实验性阶跃变化也未显示出温度调节反应。因此,产热模式似乎由开花的时间顺序所固定。高山物种克里特海芋和伊达山海芋的产热明显低于低地的雅致海芋,这可能与它们寒冷多风的栖息地中提高花朵温度的困难有关。

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